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Regulation of bone marrow cell survival in short-term cultures: a new macrophage function
Abstract:
The involvement of macrophages (M phi) in the regulation of bone marrow (BM) cell survival in short-term cultures was studied. We developed a system to measure the survival of fresh BM cells in vitro, by evaluating 111indium (111In) release from prelabeled BM cells. 111In release was proportional to cell death and inversely related to the number of trypan blue excluding cells. Upon 24 hr of culture in conventional medium, more than 50% of BM cells died. In order to investigate whether BM cell death could be reduced by coculture with other cell types, 111In-labeled BM cells were incubated for 24 hr with peritoneal M phi, thymocytes (THY), or polymorphonuclear cells (PMN) and then assayed for their survival. We found that coculture of BM cells with M phi dramatically increased BM survival, whereas THY or PMN consistently failed to enhance BM survival. The ability to promote BM cell survival, here designated nurse activity, represented a novel function of M phi and was further characterized. The stage of activation of M phi did not influence their nurse activity, since M phi elicited in vivo by proteose-peptone, thioglycollate, or Bacillus Calmette-Guérin, as well as resident M phi unstimulated or activated in vitro with lipopolysaccharide, equally sustained survival of BM cells. BM-derived M phi (adherent cells from BM cultures maintained in 20% L-cell-conditioned medium for 14 days) were equally effective in exerting nurse activity. Moreover, nurse activity was also exerted across the histocompatibility barriers. Supernatants from M phi cultures or killed M phi were ineffective. We propose that the nurse effect of M phi on BM is a primitive function that may play an important role in the development of the hemopoietic system.
Insights
Macrophages significantly enhance bone marrow cell survival in vitro, a novel function termed "nurse activity." This finding suggests a crucial role for macrophages in supporting the development of the hematopoietic system.
Area of Science:
- Hematology
- Immunology
- Cell Biology
Background:
- Bone marrow (BM) cells exhibit significant mortality in short-term in vitro cultures.
- Understanding factors regulating BM cell survival is crucial for hematopoietic research.
Purpose of the Study:
- To investigate the role of macrophages (M phi) in regulating bone marrow (BM) cell survival in vitro.
- To characterize the novel "nurse activity" of M phi in promoting BM cell survival.
Main Methods:
- Developed a novel in vitro system using 111indium (111In) release from pre-labeled BM cells to quantify cell death.
- Assessed BM cell survival after 24-hour co-culture with peritoneal M phi, thymocytes (THY), or polymorphonuclear cells (PMN).
- Evaluated the influence of M phi activation state and origin (peritoneal vs. BM-derived) on nurse activity.
Main Results:
- Co-culture with M phi dramatically increased BM cell survival, unlike THY or PMN.
- Nurse activity was independent of M phi activation status or origin (in vivo elicited, resident, or BM-derived).
- Nurse activity was MHC-independent and required live M phi; M phi supernatants or killed M phi were ineffective.
Conclusions:
- Macrophages possess a novel "nurse activity" that significantly enhances bone marrow cell survival in vitro.
- This M phi-mediated nurse effect is a primitive function potentially vital for hematopoietic system development.
- Further research into M phi-BM cell interactions could reveal new therapeutic strategies for hematological disorders.